Relion 611 series. Feeder Protection and Control REF611 Modbus Point List Manual

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1 Relion 611 series Feeder Protection and Control REF611 Modbus

2

3 Document ID: 1MRS Issued: Revision: B Product version: 2.0 Copyright 2016 ABB. All rights reserved

4 Copyright This document and parts thereof must not be reproduced or copied without written permission from ABB, and the contents thereof must not be imparted to a third party, nor used for any unauthorized purpose. The software or hardware described in this document is furnished under a license and may be used, copied, or disclosed only in accordance with the terms of such license. Trademarks ABB and Relion are registered trademarks of the ABB Group. All other brand or product names mentioned in this document may be trademarks or registered trademarks of their respective holders. Warranty Please inquire about the terms of warranty from your nearest ABB representative.

5 Disclaimer The data, examples and diagrams in this manual are included solely for the concept or product description and are not to be deemed as a statement of guaranteed properties. All persons responsible for applying the equipment addressed in this manual must satisfy themselves that each intended application is suitable and acceptable, including that any applicable safety or other operational requirements are complied with. In particular, any risks in applications where a system failure and/or product failure would create a risk for harm to property or persons (including but not limited to personal injuries or death) shall be the sole responsibility of the person or entity applying the equipment, and those so responsible are hereby requested to ensure that all measures are taken to exclude or mitigate such risks. This product has been designed to be connected and communicate data and information via a network interface which should be connected to a secure network. It is the sole responsibility of the person or entity responsible for network administration to ensure a secure connection to the network and to take the necessary measures (such as, but not limited to, installation of firewalls, application of authentication measures, encryption of data, installation of anti virus programs, etc.) to protect the product and the network, its system and interface included, against any kind of security breaches, unauthorized access, interference, intrusion, leakage and/or theft of data or information. ABB is not liable for any such damages and/or losses. This document has been carefully checked by ABB but deviations cannot be completely ruled out. In case any errors are detected, the reader is kindly requested to notify the manufacturer. Other than under explicit contractual commitments, in no event shall ABB be responsible or liable for any loss or damage resulting from the use of this manual or the application of the equipment.

6 Conformity This product complies with the directive of the Council of the European Communities on the approximation of the laws of the Member States relating to electromagnetic compatibility (EMC Directive 2004/108/EC) and concerning electrical equipment for use within specified voltage limits (Low-voltage directive 2006/95/EC). This conformity is the result of tests conducted by ABB in accordance with the product standard EN for the EMC directive, and with the product standards EN and EN for the low voltage directive. The product is designed in accordance with the international standards of the IEC series.

7 Table of contents Table of contents Section 1 Section 2 Introduction...5 This manual... 5 Intended audience... 5 Product documentation...6 Product documentation set...6 Document revision history... 6 Related documentation...7 Symbols and conventions...7 Symbols...7 Document conventions...7 Functions, codes and symbols Overview...11 Supported functions in REF Indications Premapped indications...13 Common data CTRL.CBCILO1 Circuit breaker enable signals (1)...13 CTRL.CBCSWI1 Circuit breaker (1) mom. position CTRL.CBCSWI1 Circuit breaker (1) mom+mcd position...14 CTRL.CBXCBR1 Circuit-breaker control (1) LD0.CCBRBRF1 Circuit breaker failure protection (1) LD0.CMMXU1 Three-phase current measurement (1) LD0.DARREC1 Autoreclosing (1) LD0.DARREC1 Autoreclosing state (1)...17 LD0.DEFHPDEF1 Directional earth-fault protection, high stage (1) LD0.DEFLPDEF1 Directional earth-fault protection, low stage (1) LD0.DEFLPDEF2 Directional earth-fault protection, low stage (2) LD0.DPHHPDOC1 Three-phase directional overcurrent protection, high stage (1)...18 LD0.DPHLPDOC1 Three-phase directional overcurrent protection, low stage (1) LD0.DPHLPDOC2 Three-phase directional overcurrent protection, low stage (2) LD0.EFHPTOC1 Non-directional earth-fault protection, high stage (1) REF611 1

8 Table of contents LD0.EFIPTOC1 Non-directional earth-fault protection, instantaneous stage (1)...19 LD0.EFLPTOC1 Non-directional earth-fault protection, low stage (1)...20 LD0.EFLPTOC2 Non-directional earth-fault protection, low stage (2)...20 LD0.INRPHAR1 Three-phase inrush detector (1) LD0.INTRPTEF1 Transient/intermittent earth-fault protection (1) LD0.LEDGGIO1 Indication LED states Color1/Color LD0.LEDGGIO1 Indication LED states OFF/ColorX LD0.LEDPTRC1 Global conditioning (1) LD0.MVGAPC1 Move (8 pcs) (1) LD0.NSPTOC1 Negative-sequence overcurrent protection (1) LD0.NSPTOC2 Negative-sequence overcurrent protection (2) LD0.PDNSPTOC1 Phase discontinuity protection (1)...25 LD0.PHHPTOC1 Three-phase non-directional overcurrent protection, high stage (1) LD0.PHHPTOC2 Three-phase non-directional overcurrent protection, high stage (2) LD0.PHIPTOC1 Three-phase non-directional overcurrent protection, instantaneous stage (1) LD0.PHLPTOC1 Three-phase non-directional overcurrent protection, low stage (1)...27 LD0.RESCMMXU1 Residual current measurement (1) LD0.RESVMMXU1 Residual voltage measurement (1) LD0.ROVPTOV1 Residual overvoltage protection (1) LD0.ROVPTOV2 Residual overvoltage protection (2) LD0.ROVPTOV3 Residual overvoltage protection (3) LD0.T1PTTR1 Three-phase thermal protection for feeders, cables and distribution transformers (1) LD0.TCSSCBR1 Trip circuit supervision (1) LD0.TCSSCBR2 Trip circuit supervision (2) LD0.TRPPTRC1 Master trip (1) LD0.TRPPTRC2 Master trip (2) LD0.VMMXU1 Three-phase voltage measurement (1) LD0.XAGGIO130 Physical I/O states (AIM card XA130) LD0.XGGIO100 Physical I/O states (PSM card X100)...30 LD0.XGGIO120 Physical I/O states (AIM card X120) LD0.XGGIO130 Physical I/O states (BIO card X130) Unmapped indications...32 All premapped three-phase protection function stages, start and operate/phase-dependent objects added REF611

9 Table of contents Common data DR.RDRE1 Disturbance recorder signals LD0.CBPSOF1 Switch onto fault (1) LD0.IL1TCTR1 Three-phase CT supervision (1) LD0.RCHLCCH1 Ethernet supervision (1) LD0.RESTCTR1 Io CT supervision (1) LD0.RESTVTR1 Uo VT supervision (1) LD0.UL1TVTR1 Three-phase VT supervision (1) Registers Premapped registers Active parameter setting group read and write...36 Control structure Control structure Control structure Control structure Control structure Control structure Control structure Control structure Device ID string Event record structure Fault record structure header Fault record data IED real-time clock (in local time mode), read and write (synchronize)...47 IED real-time clock (in UTC time mode), read and write (synchronize)...48 Indication bits mirrored in registers SSR1 System status register (1) device health...48 SSR2 System status register (2) IED mode and state SSR3 System status register (3) data available 1 (clientdependent) SSR4 System status register (4) data available 2 (clientdependent, user-definable) SSR5 System status register (5) device alive register SSR6 System status register (6) control command status (client-dependent) System register values Time and reason for latest IED reset...52 User-definable bits [Alt.2], visible on 0x,1x,3x and 4x User-definable registers [Alt.1], visible on 3x and 4x CTRL.CBCSWI1 Circuit breaker operation counter (1) LD0.CMMXU1 Phase current demand values (1) LD0.CMMXU1 Three-phase current measurement (1) REF611 3

10 Table of contents LD0.CSMSQI1 Sequence current measurement (1)...55 LD0.DARREC1 Autoreclosing counters (1)...55 LD0.DARREC1 Autoreclosing values (1) LD0.FMMXU1 Frequency measurement (1) LD0.PEMMTR1 Three-phase energy measurements (1)...56 LD0.PEMMXU1 Power measurement demand values (1) LD0.PEMMXU1 Three-phase power and energy measurement (1) LD0.RESCMMXU1 Residual current demand value (1)...58 LD0.RESCMMXU1 Residual current measurement (1) LD0.RESVMMXU1 Residual voltage demand value (1) LD0.RESVMMXU1 Residual voltage measurement (1) LD0.T1PTTR1 Three-phase thermal protection for feeders, cables and distribution transformers (1) LD0.VMMXU1 Three-phase voltage measurement (1) LD0.VMMXU1 Voltage demand values (1) LD0.VSMSQI1 Sequence voltage measurement (1)...61 Unmapped registers CTRL.LLN0 Local, Remote, Station, Off and Combinations.. 61 Controls Reset, acknowledge and trigger points CTRL.CBCSWI1 Circuit breaker control (1) LD0.LDEV1 IED warm reset (1) Unmapped control points...63 Section 3 Glossary REF611

11 1MRS B Section 1 Introduction Section 1 Introduction 1.1 This manual The point list manual describes the outlook and properties of the data points specific to the protection relay. The manual should be used in conjunction with the corresponding communication protocol manual. 1.2 Intended audience This manual addresses the communication system engineer or system integrator responsible for pre-engineering and engineering for communication setup in a substation from an protection relay perspective. The system engineer or system integrator must have a basic knowledge of communication in protection and control systems and thorough knowledge of the specific communication protocol. REF611 5

12 Section 1 Introduction 1MRS B 1.3 Product documentation Product documentation set Planning & purchase Engineering Installation Commissioning Operation Maintenance Decommissioning, deinstallation & disposal Quick start guide Quick installation guide Brochure Product guide Operation manual Installation manual Connection diagram Engineering manual Technical manual Application manual Communication protocol manual IEC engineering guide Point list manual Cyber security deployment guideline GUID-0777AFDA-CADF-4AA9-946E-F6A856BDF75E V1 EN Figure 1: The intended use of manuals in different lifecycles Product series- and product-specific manuals can be downloaded from the ABB Web site Document revision history Document revision/date Product version History A/ First release B/ Content updated to correspond to the product version Download the latest documents from the ABB Web site 6 REF611

13 1MRS B Section 1 Introduction Related documentation Name of the document Modbus Communication Protocol Manual Document ID 1MRS Symbols and conventions Symbols The caution icon indicates important information or warning related to the concept discussed in the text. It might indicate the presence of a hazard which could result in corruption of software or damage to equipment or property. The information icon alerts the reader of important facts and conditions. The tip icon indicates advice on, for example, how to design your project or how to use a certain function. Although warning hazards are related to personal injury, it is necessary to understand that under certain operational conditions, operation of damaged equipment may result in degraded process performance leading to personal injury or death. Therefore, comply fully with all warning and caution notices Document conventions A particular convention may not be used in this manual. Abbreviations and acronyms are spelled out in the glossary. The glossary also contains definitions of important terms. Push button navigation in the LHMI menu structure is presented by using the push button icons. To navigate between the options, use and. Menu paths are presented in bold. Select Main menu/settings. LHMI messages are shown in Courier font. To save the changes in nonvolatile memory, select Yes and press. Parameter names are shown in italics. The function can be enabled and disabled with the Operation setting. Parameter values are indicated with quotation marks. REF611 7

14 Section 1 Introduction 1MRS B The corresponding parameter values are "On" and "Off". Input/output messages and monitored data names are shown in Courier font. When the function starts, the START output is set to TRUE. This document assumes that the parameter setting visibility is "Advanced" Functions, codes and symbols Table 1: Functions included in the relay Function IEC IEC IEC-ANSI Protection Three-phase non-directional overcurrent protection, low stage, instance 1 Three-phase non-directional overcurrent protection, high stage, instance 1 Three-phase non-directional overcurrent protection, high stage, instance 2 Three-phase non-directional overcurrent protection, instantaneous stage, instance 1 Non-directional earth-fault protection, low stage, instance 1 Non-directional earth-fault protection, low stage, instance 2 Non-directional earth-fault protection, high stage, instance 1 Non-directional earth-fault protection, instantaneous stage Three-phase directional overcurrent protection, low stage, instance 1 Three-phase directional overcurrent protection, low stage, instance 2 Three-phase directional overcurrent protection, high stage, instance 1 Directional earth-fault protection, low stage, instance 1 Directional earth-fault protection, low stage, instance 2 Directional earth-fault protection, high stage Transient/intermittent earth-fault protection Non-directional (cross-country) earth fault protection, using calculated Io Negative-sequence overcurrent protection, instance 1 Table continues on next page PHLPTOC1 3I> (1) 51P-1 (1) PHHPTOC1 3I>> (1) 51P-2 (1) PHHPTOC2 3I>> (2) 51P-2 (2) PHIPTOC1 3I>>> (1) 50P/51P (1) EFLPTOC1 Io> (1) 51N-1 (1) EFLPTOC2 Io> (2) 51N-1 (2) EFHPTOC1 Io>> (1) 51N-2 (1) EFIPTOC1 Io>>> 50N/51N DPHLPDOC1 3I> -> (1) 67-1(1) DPHLPDOC2 3I> -> (2) 67-1(2) DPHHPDOC1 3I>> -> (1) 67-2(1) DEFLPDEF1 Io> -> (1) 67N-1 (1) DEFLPDEF2 Io> -> (2) 67N-1 (2) DEFHPDEF1 Io>> -> 67N-2 INTRPTEF1 Io> -> IEF 67NIEF EFHPTOC1 Io>> (1) 51N-2 (1) NSPTOC1 I2> (1) 46 (1) 8 REF611

15 1MRS B Section 1 Introduction Function IEC IEC IEC-ANSI Negative-sequence overcurrent protection, instance 2 NSPTOC2 I2> (2) 46 (2) Phase discontinuity protection PDNSPTOC1 I2/I1> 46PD Residual overvoltage protection, instance 1 Residual overvoltage protection, instance 2 Residual overvoltage protection, instance 3 Three-phase thermal protection for feeders, cables and distribution transformers ROVPTOV1 Uo> (1) 59G (1) ROVPTOV2 Uo> (2) 59G (2) ROVPTOV3 Uo> (3) 59G (3) T1PTTR1 3Ith>F 49F Circuit breaker failure protection CCBRBRF1 3I>/Io>BF 51BF/51NBF Three-phase inrush detector INRPHAR1 3I2f> 68 Master trip, instance 1 TRPPTRC1 Master Trip (1) 94/86 (1) Master trip, instance 2 TRPPTRC2 Master Trip (2) 94/86 (2) Switch onto fault CBPSOF1 SOTF SOTF Other Input switch group 1) ISWGAPC ISWGAPC ISWGAPC Output switch group 2) OSWGAPC OSWGAPC OSWGAPC Selector 3) SELGAPC SELGAPC SELGAPC Minimum pulse timer (2 pcs) 4) TPGAPC TP TP Move (8 pcs), instance 1 MVGAPC MV (1) MV (1) Control Circuit-breaker control CBXCBR1 I <-> O CB I <-> O CB Autoreclosing DARREC1 O -> I 79 Condition monitoring and supervision Trip circuit supervision, instance 1 TCSSCBR1 TCS (1) TCM (1) Trip circuit supervision, instance 2 TCSSCBR2 TCS (2) TCM (2) Logging Disturbance recorder RDRE1 DR (1) DFR(1) Fault recorder FLTRFRC1 - FR Measurement Three-phase current measurement, instance 1 CMMXU1 3I 3I Sequence current measurement CSMSQI1 I1, I2, I0 I1, I2, I0 Residual current measurement, instance 1 Three-phase voltage measurement, instance 1 Sequence voltage measurement, instance 1 RESCMMXU1 Io In VMMXU1 3U 3U VSMSQI1 U1, U2, U0 U1, U2, U0 Table continues on next page REF611 9

16 Section 1 Introduction 1MRS B Function IEC IEC IEC-ANSI Residual voltage measurement RESVMMXU1 Uo Vn Frequency measurement, instance 1 FMMXU1 f f Three-phase power and energy measurement, instance 1 1) 10 instances 2) 20 instances 3) 6 instances 4) 10 instances PEMMXU1 P, E P, E 10 REF611

17 1MRS B Section 2 Section Overview This document describes the Modbus data points and structures available in the IED. The point list describes a superset of all data available through the standard configuration/s including the optional functionalities. The majority of the Modbus data points are valid for all standard configurations. Some data points are standard configuration or optional application dependent and thus not available in each IED. The unavailable, that means unused, data points always return value 0 when they are read. The configuration dependent and optional data do not overlap. 2.2 Supported functions in REF611 Table 2: Supported functions Function IEC A B C FE/C101 FE/C102 FE/C103 Protection Three-phase non-directional overcurrent protection, low stage PHLPTOC 1 1 Three-phase non-directional overcurrent protection, high stage PHHPTOC 2 2 Three-phase non-directional overcurrent protection, instantaneous stage PHIPTOC Non-directional earth-fault protection, low stage EFLPTOC 2 1) Non-directional earth-fault protection, high stage EFHPTOC 1 1) Non-directional earth-fault protection, instantaneous stage EFIPTOC 1 1) Three-phase directional overcurrent protection, low stage DPHLPDOC 2 Three-phase directional overcurrent protection, high stage DPHHPDOC 1 Directional earth-fault protection, low stage DEFLPDEF 2 1)2) 2 1)2) Directional earth-fault protection, high stage DEFHPDEF 1 1)2) 1 1)2) Transient/intermittent earth-fault protection INTRPTEF 1 1 Non-directional (cross-country) earth fault protection, using calculated Io EFHPTOC 1 3) 1 3) Negative-sequence overcurrent protection NSPTOC Phase discontinuity protection PDNSPTOC Residual overvoltage protection ROVPTOV 3 2) 3 2) Three-phase thermal protection for feeders, cables and distribution transformers T1PTTR Table continues on next page REF611 11

18 Section 2 1MRS B Function IEC A B C FE/C101 FE/C102 FE/C103 Circuit breaker failure protection CCBRBRF Three-phase inrush detector INRPHAR Master trip TRPPTRC Switch onto fault CBPSOF Control Circuit-breaker control CBXCBR Autoreclosing DARREC (1) (1) (1) Condition monitoring and supervision Trip circuit supervision TCSSCBR Logging Disturbance recorder RDRE Fault recorder FLTRFRC Measurement Three-phase current measurement CMMXU Sequence current measurement CSMSQI Residual current measurement RESCMMXU Three-phase voltage measurement VMMXU 1 Sequence voltage measurement VSMSQI 1 Residual voltage measurement RESVMMXU 1 1 Frequency measurement FMMXU 1 Three-phase power and energy measurement PEMMXU 1 Other Input switch group ISWGAPC Output switch group OSWGAPC Selector SELGAPC Minimum pulse timer (2 pcs) TPGAPC Move (8 pcs) MVGAPC , 2,... = Number of included instances. The instances of a protection function represent the number of identical protection function blocks available in the standardized configuration. () = optional 1) Io selectable by parameter and default value is "Io measured" 2) "Uo measured" is always used 3) Io selectable by parameter and default value is "Io calculated" 12 REF611

19 1MRS B Section Indications Table 3: Column name BitA RegA IEC name SA name Description Value Explanations of the indications table columns Description Default 0X and 1X bit address for the data. Default 3X and 4X register.bit (00-15) address for the data. Original IED data object identification. Described in the IEC format as Logical Device.Logical Node and thereafter.data Object.Data Attribute. Logical Node is the same as the application function block name. The signal may have a defined label that is visible, for example, in the Application Configuration tool in PCM600. Short description of the signal. See the technical manual for more information. Meaning of the value states Premapped indications Common data 1 Table 4: Common data 1 CTRL.LLN Loc.stVal - Remote/Local state 0/1=Rem/Loc LocKeyHMI.stVal.Statio n DR.RDRE1 - Station state 1=Station RcdMade.stVal - DR recording made 1=Made CTRL.CBCILO1 Circuit breaker enable signals (1) Table 5: CTRL.CBCILO1 Circuit breaker enable signals (1) CTRL.CBCILO EnaOpn.stVal ENA_OPEN Open enabled 1=Enabled EnaCls.stVal ENA_CLOSE Close enabled 1=Enabled REF611 13

20 Section 2 1MRS B CTRL.CBCSWI1 Circuit breaker (1) mom. position Table 6: CTRL.CBCSWI1 Circuit breaker (1) mom. position CTRL.CBCSWI1 POSITION Pos.stVal - Close bit 1=Close Pos.stVal - Open bit 1=Open Pos.stVal - Fault bit 1=Pos(00/11) CTRL.CBCSWI1 Circuit breaker (1) mom+mcd position Table 7: CTRL.CBCSWI1 Circuit breaker (1) mom+mcd position CTRL.CBCSWI1 POSITION Pos.stVal Close bit 1=Close Pos.stVal Open bit 1=Open < reserved > < reserved > Pos.stSeld SELECTED CB selected for control 1=Selected SynItlByps.stVal ITL_BYPASS Interlock bypass 1=Bypass CTRL.CBXCBR1 Circuit-breaker control (1) Table 8: CTRL.CBXCBR1 Circuit-breaker control (1) CTRL.CBXCBR BlkOpn.stVal BLK_OPEN Open blocked 1=Blocked BlkCls.stVal BLK_CLOSE Close blocked 1=Blocked REF611

21 1MRS B Section LD0.CCBRBRF1 Circuit breaker failure protection (1) Table 9: LD0.CCBRBRF1 Circuit breaker failure protection (1) LD0.CCBRBRF Str.general CB_FAULT_AL Timer running 1=Running OpEx.general TRBU Fail, external trip 1=Ext.trip OpIn.general TRRET Internal re-trip 1=Re-trip LD0.CMMXU1 Three-phase current measurement (1) Table 10: LD0.CMMXU1 Three-phase current measurement (1) LD0.CMMXU HiAlm.stVal HIGH_ALARM High alarm 1=Alarm HiWrn.stVal HIGH_WARN High warning 1=Warning LoWrn.stVal LOW_WARN Low warning 1=Warning LoAlm.stVal LOW_ALARM Low alarm 1=Alarm LD0.DARREC1 Autoreclosing (1) Table 11: LD0.DARREC1 Autoreclosing (1) LD0.DARREC PrgRec.stVal INPRO AR in progess 1=In progress PrgRec1.stVal INPRO_1 1st shot in progess 1=In progress PrgRec2.stVal INPRO_2 2nd shot in progess 1=In progress PrgRec3.stVal INPRO_3 3rd shot in progess 1=In progress PrgRec4.stVal INPRO_4 4th shot in progess 1=In progress Table continues on next page REF611 15

22 Section 2 1MRS B PrgRec5.stVal INPRO_5 5th shot in progess 1=In progress SucRec.stVal SUC_RECL Successful AR 1=Success UnsRec.stVal UNSUC_RECL Unsuccessful AR 1=Unsuccess InInhRec.stVal INHIBIT_RECL Inhibit reclose 1=Inhibit InBlkThm.stVal BLK_THERM Thermal block 1=Block LO.stVal LOCKED Lockout status 1=Lockout RdyRec.stVal READY Reclose ready 1=Ready ActRec.stVal ACTIVE Reclose active 1=Active PrgDsr.stVal DISCR_INPRO Discr.time in progress 1=In progress PrgCutOut.stVal CUTOUT_INPRO Cutout time in progress 1=In progress FrqOpAlm.stVal FRQ_OP_ALM Frequent op. Alarm 1=Alarm RclTmStr.stVal Reclaim time started ProCrd.stVal Protection coordination 1=In progress CBManCls.stVal MAN_CB_CL CB manually closed 1=CB closed OpCls.general CLOSE_CB Operate (close XCBR) 1=Close CB OpOpn.general OPEN_CB Operate (open XCBR) 1=Open CB UnsCBCls.stVal UNSUC_CB CB closing failed 1=Failed WtMstr.stVal CMD_WAIT Master signal to follower 1=Signal REF611

23 1MRS B Section LD0.DARREC1 Autoreclosing state (1) Table 12: LD0.DARREC1 Autoreclosing state (1) LD0.DARREC AutoRecOn.stVal AR_ON AutoRecloser state 0/1=Off/On LD0.DEFHPDEF1 Directional earth-fault protection, high stage (1) Table 13: LD0.DEFHPDEF1 Directional earth-fault protection, high stage (1) LD0.DEFHPTOC Str.general START Stage start 1=Start Op.general OPERATE Stage operate 1=Operate LD0.DEFLPDEF1 Directional earth-fault protection, low stage (1) Table 14: LD0.DEFLPDEF1 Directional earth-fault protection, low stage (1) LD0.DEFLPTOC Str.general START Stage start 1=Start Op.general OPERATE Stage operate 1=Operate LD0.DEFLPDEF2 Directional earth-fault protection, low stage (2) Table 15: LD0.DEFLPDEF2 Directional earth-fault protection, low stage (2) LD0.DEFLPTOC Str.general START Stage start 1=Start Op.general OPERATE Stage operate 1=Operate REF611 17

24 Section 2 1MRS B LD0.DPHHPDOC1 Three-phase directional overcurrent protection, high stage (1) Table 16: LD0.DPHHPDOC1 Three-phase directional overcurrent protection, high stage (1) LD0.DPHHPTOC Str.general START General start 1=Start Str.phsA Phs A start 1=Start Str.phsB Phs B start 1=Start Str.phsC Phs C start 1=Start Op.general OPERATE General operate 1=Operate LD0.DPHLPDOC1 Three-phase directional overcurrent protection, low stage (1) Table 17: LD0.DPHLPDOC1 Three-phase directional overcurrent protection, low stage (1) LD0.DPHLPTOC Str.general START General start 1=Start Str.phsA Phs A start 1=Start Str.phsB Phs B start 1=Start Str.phsC Phs C start 1=Start Op.general OPERATE General operate 1=Operate REF611

25 1MRS B Section LD0.DPHLPDOC2 Three-phase directional overcurrent protection, low stage (2) Table 18: LD0.DPHLPDOC2 Three-phase directional overcurrent protection, low stage (2) LD0.DPHLPTOC Str.general START General start 1=Start Str.phsA Phs A start 1=Start Str.phsB Phs B start 1=Start Str.phsC Phs C start 1=Start Op.general OPERATE General operate 1=Operate LD0.EFHPTOC1 Non-directional earth-fault protection, high stage (1) Table 19: LD0.EFHPTOC1 Non-directional earth-fault protection, high stage (1) LD0.EFHPTOC Str.general START Stage start 1=Start Op.general OPERATE Stage operate 1=Operate LD0.EFIPTOC1 Non-directional earth-fault protection, instantaneous stage (1) Table 20: LD0.EFIPTOC1 Non-directional earth-fault protection, instantaneous stage (1) LD0.EFIPTOC Str.general START Stage start 1=Start Op.general OPERATE Stage operate 1=Operate REF611 19

26 Section 2 1MRS B LD0.EFLPTOC1 Non-directional earth-fault protection, low stage (1) Table 21: LD0.EFLPTOC1 Non-directional earth-fault protection, low stage (1) LD0.EFLPTOC Str.general START Stage start 1=Start Op.general OPERATE Stage operate 1=Operate LD0.EFLPTOC2 Non-directional earth-fault protection, low stage (2) Table 22: LD0.EFLPTOC2 Non-directional earth-fault protection, low stage (2) LD0.EFLPTOC Str.general START Stage start 1=Start Op.general OPERATE Stage operate 1=Operate LD0.INRPHAR1 Three-phase inrush detector (1) Table 23: LD0.INRPHAR1 Three-phase inrush detector (1) LD0.INRPHAR Str.general BLK2H General start 1=Start Str.phsA Phs A start 1=Start Str.phsB Phs B start 1=Start Str.phsC Phs C start 1=Start REF611

27 1MRS B Section LD0.INTRPTEF1 Transient/intermittent earth-fault protection (1) Table 24: LD0.INTRPTEF1 Transient/intermittent earth-fault protection (1) LD0.INTRPTEF Str.general START Stage start 1=Start Op.general OPERATE Stage operate 1=Operate LD0.LEDGGIO1 Indication LED states Color1/Color2 These LED indication points interpret the case when a signal is wired to both the OK and ALARM inputs, but inverted to the other. This means that the LED toggles between red and green colors. The default color for ALARM is red and green for OK. Colors can, however, be reconfigured with a setting parameter. Signal NOT OK ALARM RESET LEDx GUID-2AE4D47A-2BBD-4422-A81C-CF2EB V1 EN Figure 2: Signal wired to both OK and ALARM inputs inverted to the other If the OK and ALARM inputs are wired to separate indication signals, the LED will have three legal states and cannot be expressed with one bit only. In this case, it is possible to combine this LED bit interpretation with the corresponding value from the other LED state interpretation. Signal 1 Signal 2 OK ALARM RESET LEDx GUID E8-4D66-412C-BA0A-0B849B5E58F2 V1 EN Figure 3: Separate signals wired to OK and ALARM inputs REF611 21

28 Section 2 1MRS B Table 25: LD0.LEDGGIO1 Indication LED states Color1/Color2 LD0.LEDGGIO LEDSt1.stVal - LED 1 state 0/1=Color1/ LEDSt2.stVal - LED 2 state 0/1=Color1/ LEDSt3.stVal - LED 3 state 0/1=Color1/ LEDSt4.stVal - LED 4 state 0/1=Color1/ LEDSt5.stVal - LED 5 state 0/1=Color1/ LEDSt6.stVal - LED 6 state 0/1=Color1/ LEDSt7.stVal - LED 7 state 0/1=Color1/ LEDSt8.stVal - LED 8 state 0/1=Color1/ LEDSt9.stVal 1) - LED 9 state 0/1=Color1/ LEDSt10.stVal 1) - LED 10 state 0/1=Color1/ LEDSt11.stVal 1) - LED 11 state 0/1=Color1/ <reserved> 0 1) Check Communication Management tool in PCM600 or LHMI or WHMI to confirm the availability for a particular device configuration LD0.LEDGGIO1 Indication LED states OFF/ColorX These LED indication points interpret the case when an indication signal is wired to either the OK or ALARM input of the LED function block. The default color for ALARM is red and green for OK. Colors can, however, be reconfigured with a setting parameter. Signal OK ALARM RESET LEDx Signal OK ALARM RESET LEDx GUID F8-C2DE-4138-B2C0-6B7C2774D4D2 V1 EN Figure 4: Signal wired to either OK or Alarm input 22 REF611

29 1MRS B Section 2 Table 26: LD0.LEDGGIO1 Indication LED states OFF/ColorX LD0.LEDGGIO LEDSt1.stVal - LED 1 state 0/1=Off/Color LEDSt2.stVal - LED 2 state 0/1=Off/Color LEDSt3.stVal - LED 3 state 0/1=Off/Color LEDSt4.stVal - LED 4 state 0/1=Off/Color LEDSt5.stVal - LED 5 state 0/1=Off/Color LEDSt6.stVal - LED 6 state 0/1=Off/Color LEDSt7.stVal - LED 7 state 0/1=Off/Color LEDSt8.stVal - LED 8 state 0/1=Off/Color LEDSt9.stVal 1) - LED 9 state 0/1=Off/Color LEDSt10.stVal 1) - LED 10 state 0/1=Off/Color LEDSt11.stVal 1) - LED 11 state 0/1=Off/Color <reserved> 0 1) Check Communication Management tool in PCM600 or LHMI or WHMI to confirm the availability for a particular device configuration LD0.LEDPTRC1 Global conditioning (1) Table 27: LD0.LEDPTRC1 Global conditioning (1) LD0.LEDPTRC Str.general - Global start 1=Start Op.general - Global operate 1=Operate LD0.MVGAPC1 Move (8 pcs) (1) Table 28: LD0.MVGAPC1 Move (8 pcs) (1) LD0.MVGAPC SPCSO1.stVal Output 1 0/1=Off/On <Mom only> Alternative 2 0/1=Off/On <Latched> Alternative 3 0/1=Off/On SPCSO2.stVal Output 2 0/1=Off/On <Mom only> Alternative 2 0/1=Off/On <Latched> Alternative 3 0/1=Off/On Table continues on next page REF611 23

30 Section 2 1MRS B SPCSO3.stVal Output 3 0/1=Off/On <Mom only> Alternative 2 0/1=Off/On <Latched> Alternative 3 0/1=Off/On SPCSO4.stVal Output 4 0/1=Off/On <Mom only> Alternative 2 0/1=Off/On <Latched> Alternative 3 0/1=Off/On SPCSO5.stVal Output 5 0/1=Off/On <Mom only> Alternative 2 0/1=Off/On <Latched> Alternative 3 0/1=Off/On SPCSO6.stVal Output 6 0/1=Off/On <Mom only> Alternative 2 0/1=Off/On <Latched> Alternative 3 0/1=Off/On SPCSO7.stVal Output 7 0/1=Off/On <Mom only> Alternative 2 0/1=Off/On <Latched> Alternative 3 0/1=Off/On SPCSO8.stVal Output 8 0/1=Off/On <Mom only> Alternative 2 0/1=Off/On <Latched> Alternative 3 0/1=Off/On LD0.NSPTOC1 Negative-sequence overcurrent protection (1) Table 29: LD0.NSPTOC1 Negative-sequence overcurrent protection (1) LD0.NSPTOC Str.general START Stage start 1=Start Op.general OPERATE Stage operate 1=Operate REF611

31 1MRS B Section LD0.NSPTOC2 Negative-sequence overcurrent protection (2) Table 30: LD0.NSPTOC2 Negative-sequence overcurrent protection (2) LD0.NSPTOC Str.general START Stage start 1=Start Op.general OPERATE Stage operate 1=Operate LD0.PDNSPTOC1 Phase discontinuity protection (1) Table 31: LD0.PDNSPTOC1 Phase discontinuity protection (1) LD0.PDNSPTOC Str.general START Stage start 1=Start Op.general OPERATE Stage operate 1=Operate LD0.PHHPTOC1 Three-phase non-directional overcurrent protection, high stage (1) Table 32: LD0.PHHPTOC1 Three-phase non-directional overcurrent protection, high stage (1) LD0.PHHPTOC Str.general START General start 1=Start Str.phsA Phs A start 1=Start Str.phsB Phs B start 1=Start Str.phsC Phs C start 1=Start Op.general OPERATE General operate 1=Operate REF611 25

32 Section 2 1MRS B LD0.PHHPTOC2 Three-phase non-directional overcurrent protection, high stage (2) Table 33: LD0.PHHPTOC2 Three-phase non-directional overcurrent protection, high stage (2) LD0.PHHPTOC Str.general START General start 1=Start Str.phsA Phs A start 1=Start Str.phsB Phs B start 1=Start Str.phsC Phs C start 1=Start Op.general OPERATE General operate 1=Operate LD0.PHIPTOC1 Three-phase non-directional overcurrent protection, instantaneous stage (1) Table 34: LD0.PHIPTOC1 Three-phase non-directional overcurrent protection, instantaneous stage (1) LD0.PHIPTOC Str.general START General start 1=Start Str.phsA Phs A start 1=Start Str.phsB Phs B start 1=Start Str.phsC Phs C start 1=Start Op.general OPERATE General operate 1=Operate REF611

33 1MRS B Section LD0.PHLPTOC1 Three-phase non-directional overcurrent protection, low stage (1) Table 35: LD0.PHLPTOC1 Three-phase non-directional overcurrent protection, low stage (1) LD0.PHLPTOC Str.general START General start 1=Start Str.phsA Phs A start 1=Start Str.phsB Phs B start 1=Start Str.phsC Phs C start 1=Start Op.general OPERATE General operate 1=Operate LD0.RESCMMXU1 Residual current measurement (1) Table 36: LD0.RESCMMXU1 Residual current measurement (1) LD0.RESCMMXU HiAlm.stVal HIGH_ALARM High alarm 1=Alarm HiWrn.stVal HIGH_WARN High warning 1=Warning LD0.RESVMMXU1 Residual voltage measurement (1) Table 37: LD0.RESVMMXU1 Residual voltage measurement (1) LD0.RESVMMXU HiAlm.stVal HIGH_ALARM High alarm 1=Alarm HiWrn.stVal HIGH_WARN High warning 1=Warning REF611 27

34 Section 2 1MRS B LD0.ROVPTOV1 Residual overvoltage protection (1) Table 38: LD0.ROVPTOV1 Residual overvoltage protection (1) LD0.ROVPTOV Str.general START General start 1=Start Op.general OPERATE General operate 1=Operate LD0.ROVPTOV2 Residual overvoltage protection (2) Table 39: LD0.ROVPTOV2 Residual overvoltage protection (2) LD0.ROVPTOV Str.general START General start 1=Start Op.general OPERATE General operate 1=Operate LD0.ROVPTOV3 Residual overvoltage protection (3) Table 40: LD0.ROVPTOV3 Residual overvoltage protection (3) LD0.ROVPTOV Str.general START General start 1=Start Op.general OPERATE General operate 1=Operate LD0.T1PTTR1 Three-phase thermal protection for feeders, cables and distribution transformers (1) Table 41: LD0.T1PTTR1 Three-phase thermal protection for feeders, cables and distribution transformers (1) LD0.T1PTTR Str.general START General start 1=Start AlmThm.general ALARM Thermal alarm 1=Alarm Table continues on next page 28 REF611

35 1MRS B Section Op.general OPERATE General operate 1=Operate LD0.TCSSCBR1 Trip circuit supervision (1) Table 42: LD0.TCSSCBR1 Trip circuit supervision (1) LD0.TCSSCBR CircAlm.stVal ALARM Supervision alarm 1=Alarm LD0.TCSSCBR2 Trip circuit supervision (2) Table 43: LD0.TCSSCBR2 Trip circuit supervision (2) LD0.TCSSCBR CircAlm.stVal ALARM Supervision alarm 1=Alarm LD0.TRPPTRC1 Master trip (1) Table 44: LD0.TRPPTRC1 Master trip (1) LD0.TRPPTRC Op.general - Op. input signal 1=Operate Tr.general - Trip output signal 1=Trip LD0.TRPPTRC2 Master trip (2) Table 45: LD0.TRPPTRC2 Master trip (2) LD0.TRPPTRC Op.general - Op. input signal 1=Operate Tr.general - Trip output signal 1=Trip REF611 29

36 Section 2 1MRS B LD0.VMMXU1 Three-phase voltage measurement (1) Table 46: LD0.VMMXU1 Three-phase voltage measurement (1) LD0.VMMXU HiAlm.stVal HIGH_ALARM High alarm 1=Alarm HiWrn.stVal HIGH_WARN High warning 1=Warning LoWrn.stVal LOW_WARN Low warning 1=Warning LoAlm.stVal LOW_ALARM Low alarm 1=Alarm LD0.XAGGIO130 Physical I/O states (AIM card XA130) Table 47: LD0.XAGGIO130 Physical I/O states (AIM card XA130) LD0.XAGGIO Ind1.stVal XA130-Input 1 State 0/1=Off/On mom-only Mom only alternative Ind2.stVal XA130-Input 2 State 0/1=Off/On mom-only Mom only alternative Ind3.stVal XA130-Input 3 State 0/1=Off/On mom-only Mom only alternative Ind4.stVal XA130-Input 4 State 0/1=Off/On mom-only Mom only alternative LD0.XGGIO100 Physical I/O states (PSM card X100) Table 48: LD0.XGGIO100 Physical I/O states (PSM card X100) LD0.XGGIO SPCSO1.stVal X100-Output 1 State 0/1=Off/On mom-only Mom only alternative Table continues on next page 30 REF611

37 1MRS B Section SPCSO2.stVal X100-Output 2 State 0/1=Off/On mom-only Mom only alternative SPCSO3.stVal X100-Output 3 State 0/1=Off/On SPCSO4.stVal X100-Output 4 State 0/1=Off/On SPCSO5.stVal X100-Output 5 State 0/1=Off/On mom-only Mom only alternative SPCSO6.stVal X100-Output 6 State 0/1=Off/On mom-only Mom only alternative LD0.XGGIO120 Physical I/O states (AIM card X120) Table 49: LD0.XGGIO120 Physical I/O states (AIM card X120) LD0.XGGIO Ind1.stVal X120-Input 1 State 0/1=Off/On mom-only Mom only alternative Ind2.stVal X120-Input 2 State 0/1=Off/On mom-only Mom only alternative Ind3.stVal X120-Input 3 State 0/1=Off/On mom-only Mom only alternative Ind4.stVal X120-Input 4 State 0/1=Off/On mom-only Mom only alternative LD0.XGGIO130 Physical I/O states (BIO card X130) Table 50: LD0.XGGIO130 Physical I/O states (BIO card X130) LD0.XGGIO Ind1.stVal X130-Input 1 State 0/1=Off/On Table continues on next page REF611 31

38 Section 2 1MRS B.mom-only Mom only alternative Ind2.stVal X130-Input 2 State 0/1=Off/On.mom-only Mom only alternative Ind3.stVal X130-Input 3 State 0/1=Off/On mom-only Mom only alternative Ind4.stVal X130-Input 4 State 0/1=Off/On mom-only Mom only alternative Ind5.stVal X130-Input 5 State 0/1=Off/On mom-only Mom only alternative Ind6.stVal X130-Input 6 State 0/1=Off/On mom-only Mom only alternative SPCSO1.stVal X130-Output 1 State 0/1=Off/On mom-only Mom only alternative SPCSO2.stVal X130-Output 2 State 0/1=Off/On mom-only Mom only alternative SPCSO3.stVal X130-Output 3 State 0/1=Off/On mom-only Mom only alternative Unmapped indications Unmapped indications are indication data that have no initial Modbus mapping locations, but can be added to the user-definable Modbus area using the Communication Management tool in PCM600. If Modbus events are enabled for these indication signals, the event identification is the user-definable area address. 32 REF611

39 1MRS B Section All premapped three-phase protection function stages, start and operate/phase-dependent objects added Table 51: All premapped three-phase protection function stages, start and operate/phase-dependent objects added LD0.xxxxxxxx (various).op.phsa Operate Phase A 1 = Operate.Str.phsA Start Phase A 1 = Start.Op.phsB Operate Phase B 1 = Operate.Str.phsB Start Phase B 1 = Start.Op.phsC Operate Phase C 1 = Operate.Str.phsC Start Phase C 1 = Start Common data 2 Table 52: Common data 2 Table continues on next page LD0.LDEV1.DevFail.stVal Internal fault 1=Fault.StLstOv.stVal Internal ind. overflow 1=Overflow.MeasLstOv.stVal Internal meas. overflow 1=Overflow.ChgFlg.stVal Configuration changed 1=Changed.FacSet.stVal Factory settings in use 1=In use LD0.GNRLLTMS1.TmChSt1.stVal Time synch. status 0/1=Down/Up.TmSyn.stVal IEC sync TmSrcSt.stVal Time sync source REF611 33

40 Section 2 1MRS B LD0.SCHLCCH1.ChLiv.stVal CH1LIV Ethernet channel 1 live 1=Live LD0.SCHLCCH2.ChLiv.stVal CH2LIV Ethernet channel 2 live 1=Live LD0.SCHLCCH3.ChLiv.stVal CH3LIV Ethernet channel 3 live 1=Live LD0.GSELPRT1.Alm.stVal GOOSE alarm 1=Alarm DR.RDRE1 Disturbance recorder signals Table 53: DR.RDRE1 Disturbance recorder signals DR.RDRE1.RcdStr.stVal Recording started 1=Started.RcdDltInd.stVal Recording deleted 1=Deleted.OvWrRcdInd.stVal Overwrite of record 1=Overwrite.PerTrgInd.stVal Periodic triggering 1=Triggered.ManTrgInd.stVal Manual triggering 1=Triggered LD0.CBPSOF1 Switch onto fault (1) Table 54: LD0.CBPSOF1 Switch onto fault (1) LD0.CBPSOF1.Op.general OPERATE Stage operate 1=Operate 34 REF611

41 1MRS B Section LD0.IL1TCTR1 Three-phase CT supervision (1) Table 55: LD0.IL1TCTR1 Three-phase CT supervision (1) LD0.IL1TCTR1.Alm.stVal ALARM Alarm 1=Alarm.Wrn.stVal WARNING Warning 1=Warning LD0.RCHLCCH1 Ethernet supervision (1) Table 56: LD0.RCHLCCH1 Ethernet supervision (1) LD0.RCHLCCH1.ChLiv.stVal CHLIV Ethernet channel live 1=Live.RedChLiv.stVal REDCHLIV Red. Ethernet channel live 1=Live LD0.RESTCTR1 Io CT supervision (1) Table 57: LD0.RESTCTR1 Io CT supervision (1) LD0.RESTCTR1.Alm.stVal ALARM Alarm 1=Alarm.Wrn.stVal WARNING Warning 1=Warning LD0.RESTVTR1 Uo VT supervision (1) Table 58: LD0.RESTVTR1 Uo VT supervision (1) LD0.RESTVTR1.Alm.stVal ALARM Alarm 1=Alarm.Wrn.stVal WARNING Warning 1=Warning REF611 35

42 Section 2 1MRS B LD0.UL1TVTR1 Three-phase VT supervision (1) Table 59: LD0.UL1TVTR1 Three-phase VT supervision (1) LD0.UL1TVTR1.Alm.stVal ALARM Alarm 1=Alarm.Wrn.stVal WARNING Warning 1=Warning 2.4 Registers Table 60: Column name RegA Type Scale IEC name SA name Description Values Explanations of columns in register tables Description Default 3X and 4X register address for the data. Type of the register. The alternatives are u16, u32 (unsigned 16 and 32 bits integer) or i16, i32 (signed 16 and 32 bit integer). Scale factor as default. Also, an adjustable offset value exists that is set to 0 by default. Original IED data object identification. Described in the IEC format as Logical Device.Logical Node and thereafter.data Object.Data Attribute. Logical Node is the same as the application function block name. The signal may have a defined label that is visible, for example, in the Application Configuration tool in PCM600. Short description of the signal. See the technical manual for more information. Also, if a register is writable, it is stated here. The value range of the original IEC value, that is, before scaling Premapped registers Active parameter setting group read and write Table 61: Active parameter setting group - read and write LD0.LLN u16 1 ActSetGr.Oper.ctlVal Active setting group REF611

43 1MRS B Section Control structure 1 Table 62: Control structure Execute register Password reg 1 acc to setting 8003 Password reg 2 acc to setting 8004 Control register < single bit > 8005 Confirm register < single bit > Control structure 2 Table 63: Control structure Execute register Password reg 1 acc to setting 8008 Password reg 2 acc to setting 8009 Control register < single bit > 8010 Confirm register < single bit > Control structure 3 Table 64: Control structure Execute register Password reg 1 acc to setting 8013 Password reg 2 acc to setting 8014 Control register < single bit > 8015 Confirm register < single bit > Control structure 4 Table 65: Control structure Execute register Password reg 1 acc to setting 8018 Password reg 2 acc to setting 8019 Control register < single bit > 8020 Confirm register < single bit > REF611 37

44 Section 2 1MRS B Control structure 5 Table 66: Control structure Execute register Password reg 1 acc to setting 8023 Password reg 2 acc to setting 8024 Control register < single bit > 8025 Confirm register < single bit > Control structure 6 Table 67: Control structure Execute register Password reg 1 acc to setting 8028 Password reg 2 acc to setting 8029 Control register < single bit > 8030 Confirm register < single bit > Control structure 7 Table 68: Control structure Execute register Password reg 1 acc to setting 8033 Password reg 2 acc to setting 8034 Control register < single bit > 8035 Confirm register < single bit > Control structure 8 Table 69: Control structure Execute register Password reg 1 acc to setting 8038 Password reg 2 acc to setting 8039 Control register < single bit > 8040 Confirm register < single bit > 38 REF611

45 1MRS B Section Device ID string Table 70: Device ID string 9000 u16 ASCII coded string 1) u16 1) See the technical manual Event record structure Table 71: Event record structure Selection write: 9250 u Num of multiple records i Read selection Record 1 data to read: 9252 u Record sequence num u Unread records left Timestamp of record 9254 u Year, Month Year/Month 9255 u Day, Hour Day/Hour 9256 u Minute, Second Min/Sec 9257 u Millisecond Millisecond 9258 u16 1 Event identification 1) 9259 u16 1 Data object ID u16 1 Data object ID u16 1 Event data value u16 1 Event data value 2 Record 2 data to read: If selected 9263 u Record sequence num u Unread records left Timestamp of record 9265 u Year, Month Year/Month 9266 u Day, Hour Day/Hour 9267 u Minute, Second Min/Sec 9268 u Millisecond Millisecond 9269 u16 1 Event identification Table continues on next page REF611 39

46 Section 2 1MRS B 9270 u16 1 Data object ID u16 1 Data object ID u16 1 Event data value u16 1 Event data value 2 Record 3 data to read: If selected 9274 u Record sequence num u Unread records left Timestamp of record 9276 u Year, Month Year/Month 9277 u Day, Hour Day/Hour 9278 u Minute, Second Min/Sec 9279 u Millisecond Millisecond 9280 u16 1 Event identification 9281 u16 1 Data object ID u16 1 Data object ID u16 1 Event data value u16 1 Event data value 2 Record 4 data to read: If selected 9285 u Record sequence num u Unread records left Timestamp of record 9287 u Year, Month Year/Month 9288 u Day, Hour Day/Hour 9289 u Minute, Second Min/Sec 9290 u Millisecond Millisecond 9291 u16 1 Event identification 9292 u16 1 Data object ID u16 1 Data object ID u16 1 Event data value u16 1 Event data value 2 Record 5 data to read: If selected 9296 u Record sequence num u Unread records left Timestamp of record 9298 u Year, Month Year/Month 9299 u Day, Hour Day/Hour Table continues on next page 40 REF611

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